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用于化妆品短期应用的不同离子电渗电流分布研究。

Investigation of Different Iontophoretic Currents Profiles for Short-Term Applications in Cosmetics.

作者信息

Cázares-Delgadillo Jennyfer, Planard-Luong Lien, Gregoire Sébastian, Serna-Jiménez César E, Singhal Mayank, Kalia Yogeshvar N, Merino Virginia, Merino-Sanjuán Matilde, Nácher Amparo, Martínez-Gómez Ma Amparo, Burnier-Yalaoui Veronique, Barbarat Philippe

机构信息

Instrumental Cosmetics, Applied Research, L'Oréal, 94550 Chevilly-Larue, France.

Advanced Research, L'Oréal, 93600 Aulnay-sous-Bois, France.

出版信息

Pharmaceutics. 2018 Dec 7;10(4):266. doi: 10.3390/pharmaceutics10040266.

Abstract

This study aimed at investigating the effect of electrical current profile upon the iontophoretic transport of (i) ascorbic acid (AA) and (ii) ellagic acid (EA), into porcine skin in vitro, and the impact of the physicochemical properties of both actives on their mechanism of transport when formulated in cosmetic compositions. The experiments were performed using a proprietary iontophoretic device containing a roller to apply the formulation. Three current profiles were tested: (i) galvanic direct current (DC), (ii) square unipolar pulse current (SPC), and (iii) galvanic direct current (DC) + pulse current (PC). The skin samples were collected at different sampling points, extracted and analyzed by HPLC. Results suggested that the DC + PC mode for only 5 min was able to significantly increase the delivery of AA from o/w cosmetic compositions. The use of this current profile might improve the skin penetration of AA due to electromigration and passive diffusion, the latter being facilitated by the physical enhancement method. The SPC mode significantly improved the passage of EA in its neutral form from cosmetic o/w formulations by electroosmosis. Tailoring specific electrical current modes considering the ionization state of active ingredients would allow the design of short and personalized cosmetic treatments that significantly improve the penetration efficiency of the active ingredients and possibly reduce the doses applied.

摘要

本研究旨在调查电流模式对(i)抗坏血酸(AA)和(ii)鞣花酸(EA)在体外猪皮肤中的离子导入转运的影响,以及这两种活性成分在制成化妆品组合物时其物理化学性质对其转运机制的影响。实验使用了一种含有滚轮以涂抹制剂的专利离子导入装置进行。测试了三种电流模式:(i)直流电(DC),(ii)方形单极脉冲电流(SPC),以及(iii)直流电(DC)+脉冲电流(PC)。在不同采样点收集皮肤样本,通过高效液相色谱法进行提取和分析。结果表明,仅5分钟的DC + PC模式就能显著提高AA从水包油型化妆品组合物中的递送量。由于电迁移和被动扩散,这种电流模式的使用可能会改善AA的皮肤渗透,后者通过物理增强方法得到促进。SPC模式通过电渗作用显著提高了EA中性形式从化妆品水包油型制剂中的透过率。考虑活性成分的电离状态来定制特定的电流模式,将有助于设计出能显著提高活性成分渗透效率并可能减少施用剂量的简短且个性化的化妆品治疗方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3267/6321022/cc044f98811d/pharmaceutics-10-00266-g001.jpg

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